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Compressive behaviour of Neovius Triply Periodic Minimal Surface cellular structure manufactured by fused deposition modelling

机译:融合沉积建模制造的Neovius Tly周期最小表面蜂窝结构的压缩行为

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Compressive behaviour of Triply Periodic Minimal Surface type Neovius structure is investigated. The structure was manufactured by Fused Deposition Modelling (FDM) Additive Manufacturing technology in ABS material. The Neovius cellular structures with four different unit cell sizes of 8, 10, 12 and 14 mm with the volume fractions of 15%, 20% and 25% were investigated. Morphology of the samples was analysed through optical microscopy, and the pore and strut sizes were compared for the designed model and FDM samples. During the compression test, the Neovius structure showed the oscillating behaviour of the stress-strain curve with the larger unit cell size showing fracture across multiple layers in different orientations. Optical analysis of the struts after the compression tests showed that struts are the weakest link with the highest stressed area and the fracture was seen initiated at the struts. Both compressive modulus and strength increased with the increase in volume fraction.
机译:研究了三种周期性最小表面型Neovius结构的压缩行为。 通过熔融沉积建模(FDM)添加剂制造技术在ABS材料中制造该结构。 研究了具有8,10,12和14mm的四种不同单元电池尺寸的Neovius细胞结构,体积分数为15%,20%和25%。 通过光学显微镜分析样品的形态,并将孔和支柱尺寸进行分析,以设计模型和FDM样品。 在压缩试验期间,Neovius结构显示应力 - 应变曲线的振荡行为,其具有较大的单位细胞尺寸,显示不同取向的多层骨折。 压缩试验后,支柱的光学分析表明,支柱是与最高应力区域的最弱链接,并且在支柱上观察到裂缝。 随着体积分数的增加,压缩模量和强度都会增加。

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